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A Digital Watermarking Algorithm Based on Discrete Fractional Fourier Transformation

机译:基于离散分数阶傅里叶变换的数字水印算法

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An algorithm of digital watermarking based on hyper chaos sequence and the discrete fractional Fourier transform (DFRFT) is proposed. First, the watermark image is scrambled in the spatial domain. The original image and the watermark image are discrete fractional Fourier transformed respectively with different order. Secondly, the watermark image's real part and imaginary part are encrypted by the cipher sequence, which is generated by the hyper chaos sequence. Thirdly, the secondary visual important part of the original image is chosen for embedding into the watermark. At last, the watermark image is obtained after Fourier inversely transformed. The robustness of the watermark image under different attacks such as noise, JPEG compression, the cropping and gaussian low-pass filter is analyzed and the results demonstrate that the embedding scheme has good performance of robustness.
机译:提出了一种基于超混沌序列和离散分数阶傅里叶变换的数字水印算法。首先,水印图像在空间域中被加扰。原始图像和水印图像分别以不同的顺序进行离散的分数阶Fourier变换。其次,水印图像的实部和虚部通过由超混沌序列生成的密码序列进行加密。第三,选择原始图像的次要视觉重要部分以嵌入到水印中。最后,对水印图像进行傅立叶逆变换后得到。分析了水印图像在噪声,JPEG压缩,裁剪和高斯低通滤波器等不同攻击下的鲁棒性,结果表明该嵌入方案具有良好的鲁棒性。

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